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Solitons and the inverse scattering transform

โœ Scribed by Mark J Ablowitz; Harvey Segur


Publisher
Society for Industrial and Applied Mathematics
Year
1981
Tongue
English
Leaves
438
Series
SIAM studies in applied mathematics, 4
Edition
1st
Category
Library

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โœฆ Synopsis


A study, by two of the major contributors to the theory, of the inverse scattering transform and its application to problems of nonlinear dispersive waves that arise in fluid dynamics, plasma physics, nonlinear optics, particle physics, crystal lattice theory, nonlinear circuit theory and other areas. A soliton is a localised pulse-like nonlinear wave that possesses remarkable stability properties. Typically, problems that admit soliton solutions are in the form of evolution equations that describe how some variable or set of variables evolve in time from a given state. The equations may take a variety of forms, for example, PDEs, differential difference equations, partial difference equations, and integrodifferential equations, as well as coupled ODEs of finite order. What is surprising is that, although these problems are nonlinear, the general solution that evolves from almost arbitrary initial data may be obtained without approximation


๐Ÿ“œ SIMILAR VOLUMES


Solitons and the Inverse Scattering Tran
โœ Mark J. Ablowitz, Harvey Segur ๐Ÿ“‚ Library ๐Ÿ“… 2000 ๐Ÿ› Society for Industrial Mathematics ๐ŸŒ English

In this book we have attempted to bring together much of the work that has been accomplished in the field which we loosely term: Solitons and the Inverse Scattering Transform. Usually, our procedure has been to explain the basic mathematical ideas by means of examples rather than by considering the

Solitons and Inverse Scattering Transfor
โœ Mark J. Ablowitz, Harvey Segur ๐Ÿ“‚ Library ๐Ÿ“… 2000 ๐Ÿ› Society for Industrial Mathematics ๐ŸŒ English

A study, by two of the major contributors to the theory, of the inverse scattering transform and its application to problems of nonlinear dispersive waves that arise in fluid dynamics, plasma physics, nonlinear optics, particle physics, crystal lattice theory, nonlinear circuit theory and other area